IP Library Granted Patent US 10,215,445
Granted Patent B1
US 10,215,445 · App. 15/346,071 · Granted Feb 26, 2019

Thermosiphon system for hot water heater

Inventor: Bernard J Mottershead (Federal Way, WA)
F24H9/2007F24H9/12F24H1/18F24H1/20F24H1/201F24H9/0005
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,215,445
App. No.
15/346,071
Granted
Feb 26, 2019
Kind
B1
Abstract

A thermosiphon system for hot water heaters. In an embodiment, the thermosiphon includes a multi-tubular structure which in an embodiment is insertable through the cold water connection in a hot water tank in order to provide for a thermosiphon action in the hot water heater, to keep water circulating and prevent temperature stratification of water in the tank. In another embodiment, a thermosiphon design is fabricated within a water heater tank at the factory.

Claims (16)

1. The combination of a water heater and an internal thermosiphon, comprising:

a tank with sidewalls defining an internal space of height H between a bottom portion and a top portion, the tank adapted to be filled with water;

a cold water inlet in the top portion; a hot water outlet in the top portion;

a thermosiphon comprising a multi-tubular structure disposed along a longitudinal axis internal to said tank, said thermosiphon having (a) a cold water tube extending between an upstream end and a downstream end of the cold water tube, the upstream end fluidly connected to said cold water inlet in said top portion, and the downstream end open and adapted for discharge of water therefrom within said tank, and (b) a hot water tube, said hot water tube spaced outwardly from and situated longitudinally along at least a portion of said cold water tube, said hot water tube extending between a hot water inlet end having a hot water inlet, and a hot water output end which is open and adapted for discharge of water therefrom, said hot water tube further comprising an inlet cap substantially sealed to an outer surface of said cold water tube at a location adjacent to the cold water inlet, wherein said multi-tubular structure comprises a pair of concentric tubes nested about said longitudinal axis, wherein said cold water tube provides a centrally located cold water passageway, and wherein said hot water tube is spaced outwardly from said cold water tube and provides an annular hot water passageway between said cold water tube and said hot water tube.

2. The combination as set forth in claim 1 , further comprising a hot water collection tee within said tank, said hot water collection tee including a tee inlet, a first outlet fluidly connected to said hot water outlet in said top portion, and a second outlet fluidly connected to said hot water inlet.

3. The combination as set forth in claim 2 , wherein said multi-tubular structure has a length L I inside said tank and along said longitudinal axis, and wherein said length L I is greater than 50% of said height H.

4. The combination as set forth in claim 2 , wherein said multi-tubular structure has a length L I inside said tank and along said longitudinal axis, and wherein said length L I is greater than 75% of said height H.

5. The combination as set forth in claim 2 , wherein said multi-tubular structure has a length L I inside said tank and along said longitudinal axis, and wherein said length L I is greater than 90% of said height H.

6. The combination as set forth in claim 4 , wherein said tank is generally cylindrical and has an internal diameter D, and wherein height H is greater than diameter D.

7. A water heater, comprising:

a tank with sidewalls defining an internal space of height H between a bottom portion and a top portion, the tank adapted to be filled with water, the tank comprising a cold water inlet in the top portion and a hot water outlet in the top portion;

a thermosiphon, said thermosiphon located within said tank and including a multi-tubular structure disposed along a longitudinal axis, said thermosiphon having (a) a cold water tube extending between an upstream end and a downstream end of the cold water tube, said upstream end fluidly connected to said cold water inlet in said top portion, and said downstream end adapted for discharge of water therefrom within said tank, and (b) a hot water tube, said hot water tube spaced outwardly from and situated longitudinally along at least a portion of said cold water tube, said hot water tube extending between a hot water inlet end having a hot water inlet, and a hot water output end which is open and adapted for discharge of water therefrom, said hot water tube further comprising an inlet cap substantially sealed to an outer surface of said cold water tube at a location adjacent to the cold water inlet, wherein said multi-tubular structure comprises a pair of concentric tubes nested about said longitudinal axis, wherein said cold water tube provides a centrally located cold water passageway, and wherein said hot water tube is spaced outwardly from said cold water tube and provides an annular hot water passageway between said cold water tube and said hot water tube;

a hot water collection tee within said tank, said hot water collection tee including a tee inlet, a first outlet fluidly connected to said hot water outlet in said top portion, and a second outlet fluidly connected to said hot water inlet of said thermosiphon; and

wherein said multi-tubular structure has a length L I inside said tank and along said longitudinal axis, and wherein said length L I is greater than 75% of said height H.

8. The water heater as set forth in claim 7 , wherein said multi-tubular structure has a length L I inside said tank and along said longitudinal axis, and wherein said length L I is greater than 90% of said height H.

9. The water heater as set forth in claim 7 , wherein said tank is generally cylindrical and has an internal diameter D, and wherein height H is greater than diameter D.

Continuity (2)
Provisional Application 62351169 · Jun 16, 2016
Provisional Application 62271093 · Dec 22, 2015
Cited By (3)
US 1,093,558 US 1,116,032 US 12,663,182